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利用软 X 射线断层摄影术对病毒感染细胞进行成像。

Imaging of Virus-Infected Cells with Soft X-ray Tomography.

机构信息

ALBA Synchrotron Light Source, 08290 Cerdanyola del Vallès, Spain.

Centro Nacional de Biotecnología, Consejo Superior de Investigaciones Científicas, 28049 Madrid, Spain.

出版信息

Viruses. 2021 Oct 20;13(11):2109. doi: 10.3390/v13112109.

Abstract

Viruses are obligate parasites that depend on a host cell for replication and survival. Consequently, to fully understand the viral processes involved in infection and replication, it is fundamental to study them in the cellular context. Often, viral infections induce significant changes in the subcellular organization of the host cell due to the formation of viral factories, alteration of cell cytoskeleton and/or budding of newly formed particles. Accurate 3D mapping of organelle reorganization in infected cells can thus provide valuable information for both basic virus research and antiviral drug development. Among the available techniques for 3D cell imaging, cryo-soft X-ray tomography stands out for its large depth of view (allowing for 10 µm thick biological samples to be imaged without further thinning), its resolution (about 50 nm for tomographies, sufficient to detect viral particles), the minimal requirements for sample manipulation (can be used on frozen, unfixed and unstained whole cells) and the potential to be combined with other techniques (i.e., correlative fluorescence microscopy). In this review we describe the fundamentals of cryo-soft X-ray tomography, its sample requirements, its advantages and its limitations. To highlight the potential of this technique, examples of virus research performed at BL09-MISTRAL beamline in ALBA synchrotron are also presented.

摘要

病毒是专性寄生的,依赖宿主细胞进行复制和生存。因此,为了充分了解感染和复制过程中的病毒过程,在细胞环境中研究它们是至关重要的。通常,病毒感染会由于病毒工厂的形成、细胞细胞骨架的改变和/或新形成的颗粒的出芽而导致宿主细胞的亚细胞组织发生显著变化。因此,受感染细胞中细胞器重排的精确 3D 映射可以为基础病毒研究和抗病毒药物开发提供有价值的信息。在可用于 3D 细胞成像的技术中,冷冻软 X 射线断层摄影术因其大的视场深度(允许对 10 µm 厚的生物样品进行成像,而无需进一步变薄)、分辨率(断层摄影术约为 50nm,足以检测病毒颗粒)、对样品处理的最小要求(可用于冷冻、未固定和未染色的整个细胞)以及与其他技术结合的潜力(即,相关荧光显微镜)而脱颖而出。在这篇综述中,我们描述了冷冻软 X 射线断层摄影术的基本原理、其样品要求、优点和局限性。为了突出该技术的潜力,还介绍了在 ALBA 同步加速器的 BL09-MISTRAL 光束线上进行的病毒研究的实例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e942/8618346/857b978d55c6/viruses-13-02109-g001.jpg

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